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首页> 外文期刊>Military operations research >Finite element analysis of CFRP-externally strengthened reinforced concrete beams subjected to three-point bending
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Finite element analysis of CFRP-externally strengthened reinforced concrete beams subjected to three-point bending

机译:CFRP - 外部加强钢筋混凝土梁对三点弯曲的有限元分析

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摘要

Purpose - This paper aims to develop a non-linear finite element model predicting the response of externally strengthened beams under a three-point flexure test. Design/methodology/approach - The ANSYS software is used for modeling. SOILD65, LINK180, SHELL181 and SOLID185 elements are used, respectively, to model concrete, steel reinforcement, polymer and steel plate support. A parametric study was carried out. The effects of compressive strength. Young's modulus, layers number and carbon fiber-reinforced polymer thickness on beam behavior are analyzed. A comparative study between the non-linear finite element and analytical models, including the ACI 440.2 R-08 model, and experimental data is also carried out. Findings - A comparative study of the non-linear finite element results with analytical models, including the ACI 440.2 R-08 model and experimental data for different parameters, shows that the strengthened beams possessed better resistance to cracks. In general, the finite element model's results are in good agreement with the experimental test data. Practical implications - This model will predict the strengthened beams behavior and can describe the beams physical conditions, yielding the results that can be interpreted in the structural study context without using a laboratory testing. Originality/value - On the basis of the results, a good match is found between the model results and experimental data at all stages of loading the tested samples. Crack models obtained in the non-linear finite element model in the beams are also presented. The submitted finite element model can be used to predict the behavior of the reinforced concrete beam. Also, the comparative study between an analytical model proposed by of current code of ACI 440.2 R-08 and finite element analysis is investigated.
机译:目的 - 本文旨在开发一种非线性有限元模型,预测外部加强梁在三点挠度测试下的响应。设计/方法/方法 - ANSYS软件用于建模。 SOILD65,LINK180,SHALL181和SOLL185元件分别用于模型混凝土,钢筋,聚合物和钢板支撑。进行了参数研究。抗压强度的影响。分析了杨氏模量,层数和碳纤维增强聚合物厚度在梁行为上。还进行了非线性有限元和分析模型的对比研究,包括ACI 440.2 R-08模型和实验数据。调查结果 - 具有分析模型的非线性有限元结果的对比研究,包括ACI 440.2 R-08模型和不同参数的实验数据,表明加强光束具有更好的抗裂性。通常,有限元模型的结果与实验测试数据很好。实际意义 - 该模型将预测增强的光束行为,并且可以描述光束物理条件,产生可以在结构研究环境中解释的结果而不使用实验室测试。原创性/值 - 在结果的基础上,在装载测试样品的所有阶段的模型结果和实验数据之间发现了良好的匹配。还提出了在光束中的非线性有限元模型中获得的裂纹模型。提交的有限元模型可用于预测钢筋混凝土梁的行为。此外,研究了ACI 440.2 R-08的当前码和有限元分析所提出的分析模型之间的比较研究。

著录项

  • 来源
    《Military operations research》 |2020年第2期|183-202|共20页
  • 作者单位

    Department of Civil Engineering University of Constantine 1 Faculty of Engineering Sciences Constantine Algeria;

    Department of Civil Engineering University of Constantine 1 Faculty of Engineering Sciences Constantine Algeria;

    Department of Civil Engineering Laboratory of Materials Sciences and Environment University Hassiba Benbouali of Chief Chief Algeria;

    Projects Department Ministry of Construction and Housing and Public Municipalities Baghdad Iraq;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Reinforced concrete beams; CFRP; Numerical model; ANSYS; Shear; Flexural;

    机译:钢筋混凝土梁;CFRP;数值模型;ansys;剪弯曲;

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